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High-temperature deformation field measurement by combining transient aerodynamic heating simulation system and reliability-guided digital image correlation

机译:结合瞬态气动加热模拟系统和可靠度指导的数字图像相关性进行高温变形场测量

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摘要

To determine the full-field high-temperature thermal deformation of the structural materials used in high-speed aerospace flight vehicles, a novel non-contact high-temperature deformation measurement system is established by combining transient aerodynamic heating simulation device with the reliability-guided digital image correlation (RG-DIC). The test planar sample with size varying from several mm~2 to several hundreds mm~2 can be heated from room temperature to 1100 ℃ rapidly and accurately using the infrared radiator of the transient aerodynamic heating simulation system. The digital images of the test sample surface at various temperatures are recorded using an ordinary optical imaging system. To cope with the possible local decorrelated regions caused by black-body radiation within the deformed images at the temperatures over 450 ℃, the RG-DIC technique is used to extract full-field in-plane thermal deformation from the recorded images. In validation test, the thermal deformation fields and the values of coefficient of thermal expansion (CTEs) of a chromiumnickel austenite stainless steel sample from room temperature to 550 ℃ is measured and compared with the well-established handbook value, confirming the effectiveness and accuracy of the proposed technique. The experimental results reveal that the present system using an ordinary optical imaging system, is able to accurately measure full-field thermal deformation of metals and alloys at temperatures not exceeding 600 ℃.
机译:为了确定高速航空飞行器中使用的结构材料的全场高温热变形,通过将瞬态气动加热模拟装置与可靠性导向数字系统相结合,建立了一种新型的非接触式高温变形测量系统。图像相关性(RG-DIC)。使用瞬态气动加热模拟系统的红外辐射器,可以将尺寸从几毫米2到几百毫米2的测试平面样品从室温快速准确地加热到1100℃。使用普通的光学成像系统记录各种温度下的测试样品表面的数字图像。为了应对在450℃以上的温度下变形图像中黑体辐射可能引起的局部去相关区域,采用RG-DIC技术从记录的图像中提取全场面内热变形。在验证测试中,测量了室温至550℃时铬镍奥氏体不锈钢样品的热变形场和热膨胀系数(CTE)值,并将其与公认的手册值进行比较,证实了该方法的有效性和准确性。提出的技术。实验结果表明,该系统采用普通的光学成像系统,能够在不超过600℃的温度下准确测量金属和合金的全场热变形。

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